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Simple inlet devices and hot water storage tank their influence on thermal stratification in a

机译:简单的进水装置和热水储罐会影响锅炉中的热分层

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摘要

Thermal energy storage is a technology used mostly in buildings and industries in order to preserve thermal energy so that the stored energy can be used at a later time. Thermal stratification during the charge process in a cylindrical water tank was investigated using tools of Computational Fluid Dynamics (CFD). Simulations were validated by means of experimental measurements of time-dependent temperature profiles. The results showed that the model was able to adequately capture the experimental temperature evolution in the tank for all the validation cases. Once validated the model, simple modifications of the usual inlet devices and inflow rate by CFD techniques were accomplished with the intention of improving the tank performance. It was found that the modifications of the simulated inlet devices affected the stratification level. This could lead to improve designs and optimize system efficiency. The analyses confirmed numerically the results obtained experimentally, and it was evidenced that a sintered bronze conical diffuser can improve stratification compared to a conventional bronze elbow inlet. Therefore, CFD techniques proved to be quite a valuable complement of experimental studies. The use of low inflow, smooth out inlet velocity and operate inflow upwards near the top of the tank enhanced stratification. (C) 2017 Published by Elsevier B.V.
机译:热能存储是一种主要用于建筑和工业中的技术,目的是保存热能,以便以后可以使用所存储的能量。使用计算流体动力学(CFD)工具研究了圆柱形水箱在装料过程中的热分层。通过时间相关温度曲线的实验测量验证了仿真。结果表明,对于所有验证案例,该模型都能够充分捕获储罐中的实验温度变化。一旦验证了模型,就可以通过CFD技术对常用的进气装置和流入速率进行简单修改,以提高储罐性能。发现模拟进气装置的修改影响了分层水平。这可能会改善设计并优化系统效率。该分析在数值上证实了实验获得的结果,并且证明了与传统的青铜弯头入口相比,烧结青铜圆锥形扩散器可以改善分层。因此,CFD技术被证明是实验研究的宝贵补充。使用低流量,平滑入口速度并在罐顶部附近向上运行的流量可增强分层。 (C)2017由Elsevier B.V.发布

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